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Product effect

D is basically a succession of 2D or 3D surveys repeated at intervals of time during which it is expected that some production effect has occurred, of sufficient magnitude to effect the acoustic impedance contrast seen by the propagating waves. For example, this oould be changes in the water or gas saturation, or changes in pressure. [Pg.20]

Molecular features of polypropylene Expected process/product effects Potential application... [Pg.160]

After 19 hours, no reaction between the zinc chelate 2 and benzaldehyde can be detected at 20 °C. However, 10 mol % of the zinc chelate effectively catalyzes theenantioselective addition of diethylzinc to aromatic aldehydes. The predominant formation of the S-configurated products, effected by this conformationally unambiguous catalyst, can be explained by a six-mem-bered cyclic transition state assembly17. The fact that the zinc chelate formed from ligand M is an equally effective catalyst clearly demonstrates that activation of the aldehyde moiety does not occur as a consequence of hydrogen bond formation between the ammonium proton of the pyrrolidine unit and the aldehydic oxygen. [Pg.172]

J. L. Elbel, R. C. Navarrete, and B. D. Poe, Jr. Production effects of fluid loss in fracturing high-permeability formations. In Proceedings Volume, pages 201-211. SPE Europe Formation Damage Contr Conf (The Hague, Netherlands, 5/15-5/16), 1995. [Pg.384]

The packaging systems used were discussed in some detail in several EPARs. The number of products requiring a desiccant of some type is quite a high proportion of the total. In many cases both blister packs (of various compositions) and bottles (glass or plastics) were used for the same product. Effectiveness in protecting light-sensitive active ingredients and products is mentioned in the EPARs. Child resistance and tamper evidence is also mentioned. [Pg.663]

Table 3.3 Some approved biopharmaceuticals that have been altered by post-translational engineering Engineered product Effect of engineering... Table 3.3 Some approved biopharmaceuticals that have been altered by post-translational engineering Engineered product Effect of engineering...
Initial safety tests were carried out in beagle dogs and subsequently in cynomolgus monkeys. Single bolus i.v. doses of up to 100 mg kg-1 were used and were found to exert no negative effect upon general condition, blood pressure, heart or cardiovascular parameters, respiration rate or body temperature. No safety tests evaluating potential product effects upon the central nervous system were undertaken, as the protein is considered unlikely to cross the blood-brain barrier. [Pg.85]

Ito, T., et. al., Mechanism of TCDD-induced suppression of antibody production Effect on T cell-derived cytokine production in the primary immune reaction of mice, Toxicol. Sci., 70,46, 2002. [Pg.254]

In addition to directly eliciting cell chemotaxis and free-radical production, PAF can also induce the release of various inflammatory cytokines, amongst which tumour necrosis factor (TNF) is of particular importance [ 312 ]. We have recently shown that PAF stimulates TNF production from peripheral blood derived monocytes and at picomolar concentrations amplifies lipopoly-saccharide (LPS)-induced TNF production, effects inhibited by various PAF antagonists [313]. PAF also acts synergistically with interferon-y (IFN-y) to increase the monocyte cytotoxicity. Furthermore, PAF can modulate the production of both interleukin 1 and interleukin 2 (IL-1, IL-2) from rat monocytes and lymphocytes, respectively [222, 223], cytokines which in turn elicit the release of other mediators and growth factors. [Pg.363]

In both the OSHA PSM Standard and the EPA RMP regulation, the PHA element does not currently specify the factors that must be considered to effectively manage reactive hazards. Present requirements should be augmented to explicitly require an evaluation of such factors as rate and quantity of heat generated maximum operating temperature to avoid decomposition thermostability of reactants, reaction mixtures, byproduct waste streams, and products effect of charging rates, catalyst addition, and possible contaminants and understanding the consequences of runaway reactions or toxic gas evolution. [Pg.355]

Goroyias, G.J. and Hale, M.D. (2002). Heat treatment of wood strands for OSB production effect on the mechanical properties, water absorption and dimensional stability. International Research Group on Wood Preservation, Doc. No. IRGAVP 02-40238. [Pg.209]

Aside from the multifaceted chemical conversions, there are sources to develop into industrially viable microbial conversions. 1,2,4-Butanetriol, for example, used as an intermediate chemical for alkyd resins and rocket fuels, is currently prepared commercially from malic acid by high-pressure hydrogenation or hydride reduction of its methyl ester. In a novel environmentally benign approach to this chemical, wood-derived D-xylose is microbially oxidized to D-xylonic acid, followed by a multistep conversion to the product effected by a biocatalyst specially engineered by inserting Pseudomonas putida plasmids into E. coli ... [Pg.47]

Figure No. Mechanism Reversible Reactions Inhibition by Product Effect of ... Figure No. Mechanism Reversible Reactions Inhibition by Product Effect of ...
Fig. 2.75 Quasireversible reaction coupled with adsorption of both the reactant and product. Effect of/ on the ratio Conditions of the simulations are /dday = 300 s, = 113 s , (X =... Fig. 2.75 Quasireversible reaction coupled with adsorption of both the reactant and product. Effect of/ on the ratio Conditions of the simulations are /dday = 300 s, = 113 s , (X =...

See other pages where Product effect is mentioned: [Pg.358]    [Pg.549]    [Pg.261]    [Pg.517]    [Pg.2143]    [Pg.280]    [Pg.363]    [Pg.112]    [Pg.426]    [Pg.107]    [Pg.525]    [Pg.727]    [Pg.354]    [Pg.216]    [Pg.10]    [Pg.85]    [Pg.190]    [Pg.48]    [Pg.123]    [Pg.184]    [Pg.335]    [Pg.178]    [Pg.121]    [Pg.123]    [Pg.217]    [Pg.106]    [Pg.183]    [Pg.113]    [Pg.170]    [Pg.275]   
See also in sourсe #XX -- [ Pg.102 , Pg.103 , Pg.104 , Pg.105 , Pg.106 ]




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Additivity of Effective Charge in Reactants and Products

Anti-inflammatory effect products

Anti-inflammatory effect prostaglandin production

Anti-inflammatory effect thromboxane production

Antioxidative effect products

Bacterial growth, effect production

Bisulfite addition products, effect

Blood products adverse effects

Catalysts effects on yields and product properties

Compostability additive product effects

Core fission product volatilization, effect

Cost-effective conversion into useful products

Cost-effective mass production

Cost-effective mass production processes

Cost-effective production method

Cytokine production inhibitory effect

Delocalization effects on product stability

Deuterium isotope effects product dependence

Digester methane production, effect

Directing effects predicting products

EFFECT ON PRODUCT PROPERTIES

Effect aerosol production

Effect of Glucose to Glutamine Ratio on MAb Productivity in a Chemostat

Effect of Reflux Ratio and Product Rates

Effect of Strain Rate on Radical Production

Effect of exogenous hydrogen succinic acid production in benchscale fermenter

Effect of nitrating agent and reaction conditions on product selectivity

Effect of oxygen on bread production

Effect of plasticizers on product properties

Effect of polymer degradation products on plasticizers

Effect of product inhibition

Effect of solvent on product

Effect of temperature on product

Effect of temperature on product distribution

Effect on Liquid Product Composition

Effect on product distributions and

Effect on product selectivity

Effect on product yields

Effective core-charge product

Effective production function

Effective surface product

Effectiveness factors product concentrations

Effects of vertical permeability on oil production

Effects on hydration products

Effects on product stability

Effects on the products and kinetics of hydration

Enhanced degradation effect of hydrolysis product

Environmental Effects of Ethanol and Methanol Production from Biomass

Films additive product effects

Fission products biological effects

Fission products effective cross section

Food products fatty acids effect

Freezing pretreatment, effect products

Global productivity, effect

Global productivity, effect radiation

Glucagon production, effect

Hydrogenation solubility, reaction product effects

Hydrolysis products, effect

Hydrolysis products, effect temperature

Insulin production, effect

Interferon production effect

Kinetic Effects on Attainable Products

Kinetic isotope effects product dependence

Kinetics, adsorption product formation effect

Ligninase production, effect

Lipid peroxidation products, effects

Long-term site productivity, effect

Maillard products, nutritional effects

Maillard reaction products antioxidative effect

Matrix effect production

Methanol, production pressure effect

Methanol, production temperature effect

Milk products, various effects

Mineralization additive product effects

Molecular weight additive product effects

Monascus rice products effect

Natural products antitumor effect

Natural products chemistry, effect

Natural products effects

Non-equilibrium effects due to condensible products

Nonradical oxidation products, effect

Outline of Plastics Use as Other Consumer Products and Possible Health Effects

Oxidation products cage effect

Oxidation products temperature effect

Pharmaceutical product shelf-life temperature effects

Pharmaceutical products effectiveness

Phenolic acid production effects

Plaque acid production effects

Polymerization continued) product, effect

Polymerization products, effects

Pore production rate, effect

Primary production, effect

Primary production, effect radiation

Product formation, effect

Product isotope effects

Product properties quantum size effect

Product selectivity feed ratio effect

Product selectivity hydrogen concentration effect

Product selectivity mass transfer effect

Product studies structural effects

Product temperature, effect

Product temperature, effect from wood

Production conditions, effects

Production hockey stick effect

Production of an Entourage Effect by Related Glycerol Derivatives

Products and Methods Complementing the Effect of Sulfur Dioxide

Radon decay products effect

Skill 9.3 Solving problems involving solubility product constants of slightly soluble salts and the common-ion effect

Soils additive product effects

Solid corrosion products protective effect

Solubility Product, Effect

Southern Ocean, potential effects productivity

Steaming pretreatment, effect products

Subject acid production effects

Surface electrostatic charge, effect products

Temperature effects corrosion products

Temperature effects on productivity

The Design of an Effective Natural-Products-Based Approach to Drug Discovery

The Effect of RF Pulses on Product Operators

Time frame additive product effects

Toxicological Effects of Veterinary Medicinal Products in Humans Volume

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